Gunn Jonathan W, Turner Suzanne D, Mann Brenda K
Keck Graduate Institute, 535 Watson Drive, Claremont, California 91711, USA.
J Biomed Mater Res A. 2005 Jan 1;72(1):91-7. doi: 10.1002/jbm.a.30203.
Photopolymerizable polyethylene glycol (PEG) hydrogels conjugated with bioactive ligands were examined for their use as scaffolds in peripheral nerve regeneration applications. The bioactivity and mechanical properties of PEG hydrogels can be tailored through the integration of bioactive factors (adhesion ligands, proteolytic sites, growth factors) and the alteration of PEG concentrations, respectively. For peripheral nerve regeneration, it will be important to determine the type and concentration of the bioactive molecules required to improve neurite extension. In this study, cell adhesion ligands (RGDS, IKVAV, and YIGSR) were covalently attached to PEG hydrogels. Both the type and concentration of cell adhesion ligand used affected neurite extension. Extension from PC12 cells was greater on hydrogels with RGDS incorporated than IKVAV, and the optimal concentration for each ligand was different. Cells adhered to but did not extend neurites on hydrogels with YIGSR. Cells did not adhere to hydrogels containing RGES. Furthermore, different combinations of these ligands affected neurite extension to different degrees. The mechanical properties of the hydrogels also significantly affected neurite extension. PC12 cells grown on more flexible hydrogels exhibited the greatest degree of neurite extension. PEG hydrogels have thus been developed with varying biochemical and mechanical properties that may enhance nerve regeneration.
研究了与生物活性配体共轭的可光聚合聚乙二醇(PEG)水凝胶作为周围神经再生应用支架的用途。PEG水凝胶的生物活性和机械性能可分别通过整合生物活性因子(粘附配体、蛋白水解位点、生长因子)和改变PEG浓度来调整。对于周围神经再生,确定改善神经突延伸所需的生物活性分子的类型和浓度将很重要。在本研究中,细胞粘附配体(RGDS、IKVAV和YIGSR)被共价连接到PEG水凝胶上。所用细胞粘附配体的类型和浓度均影响神经突延伸。在掺入RGDS的水凝胶上,PC12细胞的延伸比IKVAV更大,且每种配体的最佳浓度不同。细胞在含有YIGSR的水凝胶上粘附但不延伸神经突。细胞不粘附于含有RGES的水凝胶。此外,这些配体的不同组合对神经突延伸的影响程度不同。水凝胶的机械性能也显著影响神经突延伸。在更柔软水凝胶上生长的PC12细胞表现出最大程度的神经突延伸。因此,已开发出具有不同生化和机械性能的PEG水凝胶,这些性能可能会增强神经再生。